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Influence of a nitrogen supplement on the growth of wood decay fungi and decay of wood

机译:氮素添加对木材腐烂真菌生长和木材腐烂的影响

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Bioremediation processes require cheap and effective nutrient sources which contain significant amounts of nitrogen, e.g. corn steep liquor (CSL). In order to elucidate fungal copper tolerance in a nitrogen-rich environment, experiments were performed on a nutrient medium and with wood. CSL was added to nutrient medium containing different copper concentrations and to Norway spruce (Picea abies) wood specimens impregnated with a commercial copper-based preservative (CCB). Sterilized CCB-impregnated and control CSL-supplemented specimens were exposed to copper-tolerant (Antrodia vaillantii, Leucogyrophana pinastri) and copper-sensitive (Postia placenta, Gloeophyllum trabeum, Trametes versicolor and Hypoxylon fragiforme) fungal species according to the mini-block procedure. Additionally, nutrient media containing CSL and copper(II) sulphate of different concentrations were inoculated with the same fungi and the growth of the fungal hyphae was visually estimated. The results of both experiments showed that CSL increases the ability of the copper-sensitive brown- and white-rot fungi to grow on copper-containing substrates. CSL inhibited growth of the copper-tolerant fungi on nutrient medium containing copper and decreased decay of CCB-preserved wood. It is believed that the reason for changed copper tolerance originates in copper-tolerant fungi producing less oxalic acid in the presence of high concentrations of nitrogen in the growth environment. (c) 2005 Elsevier Ltd. All rights reserved.
机译:生物修复过程需要廉价有效的营养源,其中含有大量的氮,例如氮。玉米浆(CSL)。为了阐明在富氮环境中真菌对铜的耐受性,在营养培养基和木材上进行了实验。将CSL添加到含有不同铜浓度的营养培养基中,并添加到浸渍有商用铜基防腐剂(CCB)的挪威云杉(Picea abies)木材标本中。根据微型模块,将灭菌的CCB浸渍和对照CSL补充的标本暴露于耐铜的(Antrodia vaillantii,Leucogyrophana pinastri)和铜敏感的(Postia胎盘,Gloeophyllum trabeum,Trametes versicolor和Hypoxylon fragiforme)真菌。另外,用相同的真菌接种不同浓度的CSL和硫酸铜(II)的营养培养基,并目测估计真菌菌丝的生长。两个实验的结果表明,CSL增强了对铜敏感的褐腐真菌和白腐真菌在含铜基质上生长的能力。 CSL抑制了含铜营养培养基上耐铜真菌的生长,并减少了CCB防腐木材的腐烂。认为改变铜耐受性的原因是由于在生长环境中存在高浓度氮的情况下,耐铜真菌产生的草酸较少。 (c)2005 Elsevier Ltd.保留所有权利。

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